首页|基于电场驱动喷射微3D打印的曲面透明电加热玻璃技术

基于电场驱动喷射微3D打印的曲面透明电加热玻璃技术

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为了解决高性能曲面透明电加热玻璃制造工艺复杂和制备成本高的问题,提出了一种基于电场驱动喷射微 3D打印制造曲面透明电加热玻璃的新方法,并阐述了该工艺流程;通过实验揭示了主要打印参数对制造曲面透明电加热玻璃银线线宽的影响规律;使用优化的打印参数在曲面透明玻璃上制备了有效加热面积为 35 mm×40 mm,线宽为 90 μm,周期为 3000 μm,附着力为 4B,透光率为 90%,电阻为 1.6 Ω,银线为金属网栅结构的曲面透明电加热玻璃.实验结果表明,该打印方法工艺简单,利用该方法制造的曲面透明电加热玻璃具有附着力好、透光率高和加热性能良好等优点,为实现低成本、高性能的曲面透明电加热玻璃的工业化制造提供了一种全新的解决方案.
Curved surface transparent electric heating glass technology based on electric field driven jet micro 3 D printing
In order to solve the problem of complex manufacturing process and high prepara-tion cost of high-performance curved surface transparent electric heating glass,a new meth-od of manufacturing curved surface transparent electric heating glass based on electric field driven jet micro 3D printing is proposed,and the technological process is described.The in-fluence of the main print parameters on the silver linewidth of curved surface transparent e-lectric heating glass is experimentally revealed,and by using the optimal printing parame-ters,a curved surface transparent electric heating glass was prepared,with an effective heat-ing area of 35 mm×40 mm,a linewidth of 90 μm,a period of 3000 μm,an adhesion of 4B,a light transmittance of 90%,a resistance of 1.6 Ω and with the silver lines as the metal grid structure.The experimental results indicate that the printing method has a simple process,and the curved surface transparent electric heating glass printed by using the proposed meth-od has the advantages of good adhesion,high transmittance and good heating performance.This method provides a new solution for the industrial manufacturing of low-cost and high-performance curved surface transparent electric heating glass.

transparent electric heating glasscurved surface printingelectric field driven jetmicro 3D printing

马圣旺、王飞、杨建军、兰红波

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青岛理工大学 机械与汽车工程学院,青岛 266525

山东省增材制造(3D打印)技术与应用高校重点实验室,青岛 266525

透明电加热玻璃 曲面打印 电场驱动喷射 微3D打印

2024

青岛理工大学学报
青岛理工大学

青岛理工大学学报

影响因子:0.514
ISSN:1673-4602
年,卷(期):2024.45(3)